Department of Chemistry, University of Helsinki, P.O. Box 55, 00014, Helsinki, Finland.
Institute for Atmospheric and Earth System Research, University of Helsinki, P.O. Box 64, 00014, Helsinki, Finland.
Mikrochim Acta. 2019 Jun 11;186(7):412. doi: 10.1007/s00604-019-3523-5.
Mesoporous silica-coated solid phase microextraction (SPME) Arrow systems were developed for capturing of low-molecular-weight aliphatic amines (LMWAAs) from complicated sample matrices. Specifically, silicas of type MCM-41, SBA-15 and KIT-6 were chosen as substrates to afford size-exclusion selectivity. They possess ordered multidimensional pore-channel structures and mesopore sizes between 3.8 and 8.2 nm. Their surface acidity was enhanced by grafting them with a layer of titanium hydrogenphosphate (-TP). This enhanced the chemical selectivity for basic LMWAAs. The siliceous coatings increased the extraction of ethylamine, diethylamine (DEA) and triethylamine (TEA) by factors of 18.6-102.5, 4.8-10.8 and 2.6-4.0, respectively, when compared to the commercial SPME Arrow with polydimethylsiloxane/divinylbenzene coating. Among them, the MCM-41 and MCM-41-TP coated SPME Arrows demonstrated exceptional selectivity towards LMWAAs that were quantified by gas chromatography-mass spectrometry (GC-MS). The total peak area ratios of LMWAAs/ten competing compounds were 25.4 and 36.3, respectively. The extraction equilibrium was reached within 20-30 min. The MCM-41 and MCM-41-TP derived SPME Arrows gave very similar results (18.4 ± 2.1-376 ± 12 ng g to DEA and TEA) when applied to urban mushroom samples. SPME Arrow with MCM-41 coatings followed by GC-MS was applied also to the analysis of atmospheric air and urine samples resulting in high selectivity due to the size and mesoporous structure of the functionalized silica, and its chemical interactions with the LMWAAs. Graphical abstract Scheme of synthesis of the MCM-41 silicas, and the preparation of solid phase microextraction Arrow coatings. They were employed for selective capturing of aliphatic amines from complex sample matrices, followed by gas chromatography-mass spectrometry.
介孔硅涂层固相微萃取 (SPME) Arrow 系统被开发用于从复杂的样品基质中捕获低分子量脂肪族胺 (LMWAAs)。具体来说,选择 MCM-41、SBA-15 和 KIT-6 型硅作为基质,以提供尺寸排阻选择性。它们具有有序的多维孔道结构和 3.8 至 8.2nm 的中孔尺寸。通过在其上接枝一层钛磷酸氢盐 (-TP) 来增强其表面酸性。这增强了对碱性 LMWAAs 的化学选择性。与具有聚二甲基硅氧烷/二乙烯基苯涂层的商业 SPME Arrow 相比,硅质涂层分别将乙胺、二乙胺 (DEA) 和三乙胺 (TEA) 的萃取率提高了 18.6-102.5、4.8-10.8 和 2.6-4.0 倍。其中,MCM-41 和 MCM-41-TP 涂层的 SPME Arrow 对通过气相色谱-质谱法 (GC-MS) 定量的 LMWAAs 表现出异常的选择性。LMWAAs/十种竞争化合物的总峰面积比分别为 25.4 和 36.3。萃取平衡在 20-30min 内达到。当应用于城市蘑菇样品时,MCM-41 和 MCM-41-TP 衍生的 SPME Arrow 给出了非常相似的结果 (18.4±2.1-376±12ng g 至 DEA 和 TEA)。MCM-41 涂层的 SPME Arrow 也随后通过 GC-MS 应用于大气空气和尿液样品的分析,由于功能化硅的尺寸和中孔结构及其与 LMWAAs 的化学相互作用,导致其具有高选择性。